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Phase modulation effects in the case of electromagnetically induced transparency

机译:电磁感应透明时的相位调制效应

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The results of a theoretical investigation of the evolution of a probe pulse under electromagnetically induced transparency in the A -scheme of degenerated inhomogeneously broadened quantum transitions are presented. It supposed that the interacted light fields are elliptically polarized, and their influence on the medium can be either strictly resonant or quasi-resonant. It is demonstrated that the probe pulse in the medium can be presented as the sum of two normal modes, i.e. quasi-monochromatic elliptically polarized fields propagating independently of each other. Due to the fact that velocities of normal mode pulses are different, a single probe pulse entering a medium splits into individual pulses inside of the medium, each of which transfers the energy of one of the normal modes. If normal modes are not phase modulated at the input surface, then in the case of quasi-resonance they become phase modulated during propagation in the medium, whereas this does not occur in the case of strict resonance. The total probe field, which is the sum of normal modes, has phase modulation before it splits into the mode pulses in cases of both strict resonance and quasi-resonance, even if it does not have it on the input surface.
机译:给出了在简并的非均匀加宽的量子跃迁的A-方案中电磁感应的透明性下探测脉冲的演化的理论研究的结果。假定相互作用的光场是椭圆偏振的,并且它们对介质的影响可以是严格共振或准共振。已经证明,介质中的探测脉冲可以表示为两个正常模式的总和,即彼此独立传播的准单色椭圆偏振场。由于正常模式脉冲的速度不同,因此进入介质的单个探测脉冲会在介质内部分解为单独的脉冲,每个脉冲都传输正常模式之一的能量。如果正常模式在输入表面未进行相位调制,则在准谐振的情况下,它们在介质中传播期间会变成相位调制,而在严格谐振的情况下则不会发生相位调制。总探头场是正常模式的总和,即使在严格的谐振和准谐振的情况下,即使在输入表面上没有它,也都会在将其分成模式脉冲之前进行相位调制。

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